The composition for oxidative dyeing of hair based on a combination of developer substances and coupler substances, contains as a developer substance 4,5-diamino-1-(4'-methoxybenzyl)pyrazole, 4,5-diamino-1-(4'-methylbenzyl)pyrazole, 4,5-diamino-1-(4'-chlorobenzyl)pyrazole, 4,5-diamino-1-(3'-methoxybenzyl)pyrazole, 4-amino-1-(4'-methoxy-benzyl) -5-methylaminopyrazole or 4-amino-5-(2'-hydroxyethyl)amino-1-(4'-methoxybenzyl)pyrazole.
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7. 4,5-Diamino-1-(4'-methylbenzyl)pyrazole.
9. 4,5-Diamino- 1-(3'-methylbenzyl)pyrazole.
6. 4,5-Diamino-1-(4'-methoxybenzyl)pyrazole.
8. 4,5-Diamino- 1 -(4'-methoxybenzyl)pyrazole.
10. 4-Amino-1-(4'-methyoxybenzyl)-5-methylaminopyrazole.
11. 4-Amino-5-(2'-hydroxyethyl)amino- 1-(4'-methoxybenzyl)pyrazole.
1. Composition for oxidative dyeing of hair based on a combination of developer substances and coupler substances, containing as a developer substance a 4,5-diaminopyrazole selected from the group consisting of 4,5-diamino-1-(4'-methoxybenzyl)pyrazole, 4,5-diamino-1-(4'-methylbenzyl)pyrazole, 4,5-diamino -1-(4'-chlorobenzyl)pyrazole, 4,5-diamino-1-(3'-methoxybenzyl)pyrazole, 4-amino-1-(4'-methoxybenzyl)-5-methylaminopyrazole and 4-amino-5-(2'-hydroxyethyl)amino-1-(4'-methoxybenzyl)pyrazole.
2. Composition according to
3. Composition according to
4. Composition according to
5. Composition according to
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This application is a 371 of PCT/EP93/02641 filed Sep. 29, 1993.
The subject matter of the invention concerns compositions for the oxidative dyeing of hair based on 4,5-diaminopyrazole derivatives as developers and new 4,5-diaminopyrazole derivatives.
In the area of hair coloring, oxidative dyes have achieved considerable importance. The dyeing is effected by the reaction of certain developers with certain couplers in the presence of a suitable oxidizing agent.
Such developers are, in particular, 2,5-diaminotoluene, 2,5-diaminophenylethyl alcohol, p-aminophenol and 1,4-diaminobenzene. Resorcinol, 4-chlororesorcinol, 1-naphthol, 3-aminophenol, 5-amino-2-methylphenol and derivatives of m-phenylenediamine are preferably used as couplers.
Oxidative dye compositions for dyeing human hair have numerous special requirements. For example, they must be unobjectionable in toxicological and dermatological respects and must enable the desired intensity of coloring. In addition, a favorable fastness to light, permanent waving, acids and rubbing is required of the achieved hair dyes. But, in every instance, such hair dyes must remain stable over a period of at least 4 to 6 weeks without being affected by light, rubbing or chemical agents. Moreover, it is necessary that a wide assortment of various color shades can be produced by means of combining suitable developers and couplers. 4-Aminophenol above all is used to achieve natural shades and especially fashionable shades in the red range either by itself or in a mixture with other developers in combination with suitable couplers.
The developer 4-aminophenol, whose chief use was formerly for the red range of the color scale, has been criticized in the past with respect to its physiological compatibility, while developers such as pyrimidine derivatives which have been recommended more recently are not completely satisfactory with respect to coloring. The pyrazole derivatives described in DE-OS21 60 317 such as 3-amino-1-phenyl-2-pyrazolone-5 have insufficient depth of color when used to dye hair and are not usable in hair dyeing practice.
Pyrazole derivatives which achieve intense coloring with various couplers are described in DE-OS 38 43 892. The compounds described therein can only be obtained by very expensive synthesizing processes and have low yields.
Various methods have been described in technical literature for producing 1-methyl-4,5-diaminopyrazole. According to H. Dorn, et al., Chem. Ber. 98, p. 3368 (1965), 5-amino-1-methylpyrazole-4-carboxylic acid is obtained in a yield of 53 percent from ethoxymethylene cyanoacetic acid ethyl ester and methylhydrazine and is decarboxylated to obtain 5-amino-1-methylpyrazole with a yield of 75 percent (total yield : 40 percent). DE-OS 2 141 700 describes a single-step process for obtaining 5-amino-1-methylpyrazole from N,N-dimethylaminoacrylonitrile and methylhydrazine in a yield of 71 percent. For further conversion, this compound can be convened to 5-amino-1-methyl-4-nitropyrazole with a yield of 23 percent according to M. A. Khan, et al., Can. J. Chem. 49, p. 3566 (1971).
According to V. P. Perevalov, et al., Khim. Geterotsicl. Soedin. 8, p. 1090 (1985), catalytic reduction of this product produces 1-methyl-4,5-diaminopyrazole dihydrochloride with a yield of approximately 79 percent. According to this reaction sequence, the total yield of 1-methyl-4,5-diaminopyrazole amounts to 13 percent throughout all steps.
Better yields are obtained when 5-amino-1-methylpyrazole is converted with isoamyl nitrite, according to H. Dorn, et al., Liebigs Ann. Chem. 717, p. 118 (1968), to produce 5-amino-1-methyl-4-nitrosopyrazole (gross yield approximately 97 percent) and then reduced with tin(II)chloride to give the end product (yield: 67 percent) so that the total yield according to this process is 46 percent throughout all steps.
A corresponding synthesis for 1-benzyl-4,5-diaminopyrazole is described in DE-OS 34 32 983. 5-Amino-1-benzylpyrazole-4-carboxylic acid ethyl ester is obtained from ethoxymethylene cyanoacetic acid ethyl ester and benzylhydrazine. After cleavage of the ester, decarboxylation, nitrozation and reduction, 1-benzyl-4,5-diaminopyrazole is obtained in a total yield of 30 percent.
Aside from low yields in some cases, the described processes exhibit other disadvantages. For example, it has not been taken into account that starting compounds such as ethoxymethyl cyanoacetic acid ethyl ester and N,N-dimethylaminoacrylonitrile as well as certain hydrazine derivatives are not available commercially and in some cases must be produced by costly syntheses. Moreover, commercially available hydrazine derivatives are classified as poisonous and in some cases as suspected carcinogens. Further, the production of compounds substituted in the 5-position amino group (e.g., alkyl, hydroxyalkyl, benzyl) is not described in this process or by subsequent steps. A further disadvantage of this synthesis consists in that the ring alkylation is already introduced in the first reaction step, that is, special starting compounds are already required at the start of the synthesis.
Under these conditions, alkylation on the ring nitrogen of a pyrazole derivative substituted in the 4-position or 5-position would be more advisable so that different derivatives are achieved only at the end of the synthesis through the selection of different alkylating agents. A process for the production of 1-methyl-4,5-diaminopyrazole is described in DE-OS 38 43 892. According to this process, 3(5)-amino-4-nitropyrazole--which is formed in a total yield of approximately 41 percent by cyclization of 2-chloroacrylonitrile with hydrazine (G. Ege, Angew. Chem., 86, p. 237 (1974)) and subsequent acetylation of the amino group, nitration and separation of the protective group--is alkylated with dimethyl sulfate to give an isomeric mixture in a yield of 70 percent which can be separated by chromatography to give the desired 5-amino-1-methyl-4-nitropyrazole in a yield of 25 percent and the isomeric 3-amino-1-methyl-4-nitropyrazole in a yield of 45 percent. The corresponding diamino compounds were isolated after reduction of the nitro compounds.
DE-OS 38 43 892 describes conversion of 3(5)-amino-4-nitropyrazole with benzyl bromide. The desired 5-amino-1-benzyl-4-nitropyrazole is not formed. Rather, a mixture is obtained from which approximately 18 percent 1-benzyl-3-benzylamino-4-nitropyrazole and 78 percent 3-amino-1-benzyl-4-nitropyrazole are obtained after chromatographic separation.
This process also provides very poor yield, if any, of substituted pyrazole derivatives such as 5-amino-1-alkyl-4-nitropyrazole or 5-amino-1-benzyl-4-nitropyrazole and compounds substituted in the 5-amino group which can be converted to the corresponding diamino compounds by reduction. Further, this process also requires the use of hydrazine which has been criticized.
Accordingly, it is an object of the present invention to provide an oxidative hair dye composition based on a combination of developers and couplers in which a developer is obtained for the red range which is very well tolerated physiologically, dyes the hair in brilliant red shades with a good depth of color when combined with conventional couplers, and can be produced in good yields.
It has now been found that this object is met in an outstanding manner by a composition for the oxidative dyeing of hair based on a combination of developers and couplers which contains, as developer, a 4,5-diaminopyrazole of the general formula (I), ##STR1## where R1 represents halogen, alkyl with 1 to 4 carbon atoms or alkoxy with 1 to 4 carbon atoms and R 2 represents hydrogen, alkyl with 1 to 4 carbon atoms or hydroxyalkyl with 2 to 4 carbon atoms or its physiologically tolerated, water-soluble salts.
The hair dye composition contains 0.01 to 3.0 percent by weight, preferably 0.1 to 2.5 percent by weight, of the developers of formula (I), preferably 4,5-diamino-1-(4'-methoxybenzyl)pyrazole, 4,5-diamino-1-(4'-methylbenzyl)pyrazole, 4,5-diamino- 1-(3'-methoxybenzyl)pyrazole and 4,5-diamino-1-(4'-chlorobenzyl)pyrazole.
Although it would be obvious, owing to the advantageous properties of the new developers described herein, to use these developers by themselves, it is, of course, also possible to use the developers of formula (I) together with known developers such as 1,4-diaminobenzene, 2,5-diaminotoluene or 2,5-diaminophenylethyl alcohol.
Preferred couplers include α-naphthol, resorcinol, 4-chlororesorcinol, 4,6-dichlororesorcinol, 2-methylresorcinol, 2-amino-4-(2'-hydroxyethyl)aminoanisole, 2,4-diaminophenyl alcohol, m-phenylenediamine, 5-amino-2-methylphenol, 2,4-diaminophenoxyethanol, 4-amino-2-hydroxyphenoxyethanol, 3-aminophenol, 3-amino-2-methylphenol, 4-hydroxy- 1,2-methylenedioxybenzene, 4-amino- 1,2-methylenedioxybenzene, 4-(2'-hydroxyethyl)amino-1,2-methylenedioxybenzene, 2,4-diaminobenzyl alcohol, 2,4-diaminophenetole, 2,4-diamino-5-methylphenetole, 4-hydroxyindole, 3-amino-5-hydroxy-2,6-dimethoxypyridine and 3,5-diamino-2,6-dimethoxypyridine.
The couplers and developers can be contained in the hair dye composition individually or in combination.
The total quantity of combined developers and couplers contained in the hair dye composition herein described is 0.1 to 5.0 percent by weight, particularly 0.5 to 4.0 percent by weight. The developers are generally used in approximately equimolar amounts with respect to the couplers. However, it is not disadvantageous in this respect if the quantity of developers is somewhat greater or less than that of the couplers.
Further, the hair dye composition according to the invention can also contain other dyeing components, e.g. 6-amino-2-methylphenol and 2-amino-5-methylphenol, as well as conventional direct dyes, e.g. triphenylmethane dyes such as Diamond Fuchsine (C.I. 42,510), (4-[(4'-aminophenyl)-(4"-imino-2",5"-cyclohexadiene-1-ylidene)methyl]-2-me thylaminobenzene monohydrochloride) and Leather Ruby HF (C.I. 42,520), (4-[(4'-amino-3'-methylphenyl) -(4"-imino-3"-methyl-2",5"-cyclohexadiene-1"-ylidene) -methyl]-2-methylaminobenzene monohydrochloride), aromatic nitro dyes such as 2-nitro-1,4-diaminobenzene, 2-amino-4-nitrophenol, 2-amino-5-nitrophenol, 2-amino-4,6-dinitrophenol, 2-amino-5-(2'-hydroxethyl)aminonitrobenzene and 2-methylamino-5-bis-(2'-hydroxyethyl)aminonitrobenzene, azo dyes such as Acid Brown 4 (C.I. 14,805) (6-[(4'-aminophenyl)azo]-5-hydroxynaphthalene-1-sulfonic acid sodium salt) and dispersed dyes such as 1,4-diaminoanthraquinone and 1,4,5,8-tetraaminoanthraquinone. The hair dye compositions can contain these dye components in quantities of approximately 0.1 to 4.0 percent by weight.
Of course, the couplers and developers as well as the other dye components, insofar as they are bases, can also be used in the form of physiologically tolerated salts with organic or inorganic acids such as hydrochloric acid or sulfuric acid or --insofar as they have aromatic OH groups --in the form of salts with bases, e.g. as alkali phenolates.
Further, the hair dye composition can contain additional common cosmetic ingredients, e.g. antioxidants such as ascorbic acid, thiogylcolic acid or sodium sulfite, as well as perfume oils, complexing agents, wetting agents, emulsifiers, thickeners and hair conditioning substances.
The new hair dye composition may be in the form of a solution for example, particularly an aqueous or aqueous-alcoholic solution. But particularly preferred preparation forms are creams, gels or emulsions. The composition contains a mixture of dye components and the usual ingredients for such preparations.
For example, common ingredients in solutions, creams, emulsions or gels are solvents such as water, lower aliphatic alcohols, e.g. ethanol, propanol and isopropanol, glycerol or glycols such as 1,2-propylene glycol, wetting agents or emulsifiers from the classes of anionic, cationic, amphoteric or nonionic surface-active substances such as fatty alcohol sulfates, ethoxylated fatty alcohol sulfates, alkyl sulfonates, alkyl benzene sulfonates, alkyl trimethylammonium salts, alkyl betaines, ethoxylated fatty alcohols, ethoxylated nonylphenols, fatty acid alkanol amides, ethoxylated fatty acid esters, and thickeners such as higher fatty alcohols, starch, cellulose derivatives, petrolatum, paraffin oil and fatty acids, as well as hair conditioning substances such as cationic resins, lanolin derivatives, cholesterol, pantothenic acid and betaine. These components are used in conventional quantities for such purposes. For example, the wetting agents and emulsifiers are used in concentrations of approximately 0.5 to 30 percent by weight, the thickeners are used in quantities of approximately 0.1 to 25 percent by weight and the hair grooming agents are used in concentrations of approximately 0.1 to 5.0 percent by weight.
Depending on the composition, the hair dye composition according to the invention can have a weak acidic, neutral or alkaline reaction. In particular, it has a pH of 6.0 to 11.5 which is adjusted in the alkaline range with ammonia. However, organic amines such as monoethanolamine and triethanolamine or inorganic bases such as sodium hydroxide and potassium hydroxide can also be used. To adjust the pH in the acidic range, phosphoric acid and acetic acid or other organic acids such as citric acid or tartaric acid can be used.
When used for oxidative dyeing of hair, the aforementioned hair dye composition is mixed immediately prior to use with an oxidizing agent and a quantity of this mixture sufficient for the hair dyeing treatment, generally approximately 60 to 200 g depending on the fullness of the hair, is applied to the hair.
Hydrogen peroxide or its addition compounds in urea, melamine or sodium borate in the form of a 3- to 12-percent aqueous solution, preferably a 6-percent aqueous solution, are the principle oxidizing agents selected for the development of the hair coloring, although atmospheric oxygen can also be used. If a 6-percent hydrogen peroxide solution is used as oxidizing agent, the weight ratio of hair dye composition to oxidizing agent is 5:1 to 1:2, but preferably 1:1. Larger quantities of oxidizing agent are used chiefly when there are higher concentrations of dyestuff in the hair dye composition or when a more intensive bleaching of the hair is intended simultaneously. The mixture is allowed to act on the hair at 15° to 50°C for approximately 10 to 45 minutes, preferably 30 minutes. The hair is then rinsed with water and dried. The hair is washed with a shampoo after this rinse, if necessary, and possibly rinsed again with a weak organic acid such as citric acid or tartaric acid. The hair is then dried.
The 4,5-diaminopyrazole derivatives of the general formula (I) used in the oxidative hair dye compositions according to the invention can be produced in an advantageous manner by initiating a reaction of a 3,5-dibromo-4-nitropyrazole of the general formula (II) with a suitable benzyl halide in the presence of sodium hydride. The obtained 1-benzyl-3,5-dibromo -4-nitropyrazole derivative of the general formula (III) is then converted with an amine and the 5-alkylamino-1-benzyl-3-bromo-4-nitropyrazole derivative of general formula (IV) which is obtained in this way is catalytically reduced. ##STR2##
The 3,5-dibromo-4-nitropyrazole (II) used as starting material is described in the pertinent literature and can be produced as follows:
Nitration of pyrazole with a mixture of sulfuric acid and nitric acid produces 4-nitropyrazole in a yield of 80 percent ( R. Huttel, et al., Chem. Ber. 88, p. 1577 (1955)). N-nitropyrazole is obtained in yields of 84 to 93 percent under milder conditions during nitration (H. J. Klebe, et al., Synthesis 1973, p. 294) and can be rearranged to give 4-nitropyrazole by interaction with sulfuric acid (R. Huttel, et al., Chem. Ber. 88, p. 1586 (1955). Bromination of 4-nitropyrazole according to J. P. H. Juffermanns, et al., J. Org. Chem. 51, p. 4656 (1986) gives 3,5-dibromo-4-nitropyrazole (II).
In the process according to the invention, 3,5-dibromo-4-nitropyrazole can be converted to the new 1-benzyl-substituted pyrazoles of the general formula (III), where R1 is a halogen, alkyl or alkoxy radical. These radicals can be introduced by various methods. For example, the compounds of general formula (III) can be obtained by converting compound (II) with sodium hydride in dimethylformamide by adding suitable benzyl halides. The particular advantage of this reaction step consists chiefly in the production of isomer-pure N-benzylsubstituted pyrazoles of the general formula (III).
By exchanging a bromine atom in compound (III), the pyrazole derivatives of the general formula (IV) are obtained, where R1 represents a halogen, alkyl or alkoxy radical and R3 represents a C1 -C4 -alkyl radical, a C2 -C4 -hydroxyalkyl or benzyl radical. The bromine atom is exchanged by interaction with an aqueous or alcoholic solution of the corresponding alkyl amine, hydroxyalkyl amine or benzyl amine. The bromine atom is exchanged exclusively in the 5-position in this reaction step so that only isomer-pure compounds result in this reaction step also.
The compounds of the general formula (IV) can be converted to different 4,5diaminopyrazoles of the general formula (I) by catalytic reduction. This reduction is normally carried out with hydrogen and common catalysts (e.g. palladium/activated carbon catalysts) and, if necessary, hydrogenation can be effected under pressure in an autoclave to increase the reaction rate. In this process, it is particularly surprising that the substituted benzyl radical of the compound of general formula (IV) is not removed by reduction. In contrast, 4,5-diaminopyrazoles carrying a hydrogen atom in the 1-position were obtained after reduction in all cases in comparison tests with compounds of formula (IV) in which R1 represents hydrogen.
With respect to compounds of general formula (IV), where R3 represents a benzyl radical or a tertiary butyl radical, 4,5-diaminopyrazole derivatives carrying, as before, a substituted benzyl radical in the 1-position are obtained after removal of these radicals by reduction.
In principle, corresponding compounds of formula (IV) could also be obtained when the bromine atom in the 5-position is exchanged for an amino group in producing the compounds of general formula (III). However, this reaction was not observed under the usual reaction conditions; even at increased pressure the introduction of an amino group in preparative yields was not successful.
The salts of the compounds of formula (I) can be obtained by conversion with organic or inorganic acids or bases.
The developers of formula (I) are used in the hair dye composition either as free bases or in the form of their physiologically tolerated salts with inorganic or organic acids, e.g. hydrochloric acid, sulfuric acid, phosphoric acid, acetic acid, propionic acid, lactic acid or citric acid. The compounds of formula (I) are favorably soluble in water and have, in addition, an excellent shelf stability, particularly as a component of the hair dye composition herein described.
The hair dye composition, according to the invention, containing 4,5-diaminopyrazole derivatives as developers produces in hair coloring with excellent color fastness, particularly with respect to light fastness, washing fastness and rubbing fastness.
With respect to dyeing characteristics, the hair dye composition according to the invention offers possibilities reaching far beyond the replacement of commonly used 4-aminophenols. Brilliant red shades with extraordinary depth of color can be produced, which is not possible with the current dye components. But apart from its use for fashion shades, natural color shades can also be produced by using the composition in combination with suitable coupling components without requiring an additional developing component of the p-phenylenediamine type.
The very good dyeing properties of the hair dye composition according to the present application are also evident in that this composition enables graying hair having previous chemical damage to be dyed easily and with good covering power.
Further, the subject matter of the present patent application concerns new 4,5-diaminopyrazole derivatives of the general formula (I), in particular
4,5-diamino-1-(4'-methoxybenzyl)pyrazole,
4, 5-diamino-1 -( 3 '-methoxybenzyl)pyrazole,
4,5-diamino-1-(4'-methylbenzyl)pyrazole,
4,5-diamino-1-(4'-chlorobenzyl)pyrazole,
4-amino-1-(4'-methoxybenzyl)-5-methylaminopyrazole and
4-amino-5-(2'-hydroxyethyl)amino- 1-(4'-methoxybenzyl)pyrazole.
The following examples explain the subject matter of the invention in more detail without the invention being limited to these examples.
PAC Example 1General directions
19.0 g (70 mmoles) of 3,5-dibromo-4-nitropyrazole in 90 ml absolute dimethylformamide (DMF) are added dropwise to 1.75 g (70 mmoles) of sodium hydride (96% in 150 ml absolute DMF) over a period of 1 hour. An increased temperature in the reaction solution and substantial gas generation are observed. As soon as the gas generation has subsided, a clear orange solution is present. 70.0 mmoles of benzyl halide in 30 ml DMF are added by drops and heating is carried out at 80°C for 3 hours. The solvent is then vacuum-distilled and the residue is recrystallized from methylene chloride.
I. 3,5-dibromo-1-(4'-methoxybenzene)-4-nitropyrazole Benzyl halide: 4-methoxybenzyl chloride
According to the general directions, 21.7 g (79 percent of theory) of 3,5-dibromo- 1-(4'-methoxybenzyl)-4-nitropyrazole are obtained with a melting point of 115°to 118°C.
1 H-NMR (60 MHz, DMSO-d6):δ=3.78 (s; 3H; OCH3); 5.30 (s; 2H;--CH2 --) and 7.07 ppm (m; 4H; Ph-H)
MS (70 eV): m/e=393 (M+).
II. 3,5-dibromo-1-(3'-methoxybenzyl)-4-nitropyrazole Benzyl halide: 3-methoxybenzyl chloride
According to the general directions, 26 g (96 percent of theory) of 3,5-dibromo-1-(3'-methoxybenzyl)-4-nitropyrazole are obtained with a melting point of 130°C
1 H-NMR (MHz), DMSO-d6 :δ=3.74 (s; 3H; OCH3); 5.48 (s; 2H;--CH2 --), 6.76-6.93 (m; 3H; 3H; Ph-H) and 7.30 ppm (dd; J-8 Hz; 1H; Ph-5H)
MS (70 eV): m/e=393 (M+).
III. 3,5-dibromo-1-(4'-methylbenzyl)-4-nitropyrazole Benzyl halide: 4-methylbenzyl chloride
According to the general directions, 18 g (68 percent of theory) of 3,5-dibromo-1-(4'-methylbenzyl)-4-nitropyrazole are obtained with a melting point of 108°C
1 H-NMR (300 MHz, DMSO-d6):δ=2.28 (s; 3H;--CH3); 5.45 (s; 2H;--CH2 --) and 7.18 ppm (m; 4H; Ph-H)
MS (70 eV): m/e=375 (M+).
IV. 3,5-dibromo-1-(4'-chlorobenzyl)-4-nitropyrazole Benzyl halide: 4-chlorobenzyl chloride
According to the general directions, 25 g (91 percent of theory) of 3,5-dibromo-1-(4'-chlorobenzyl)-4-nitropyrazole are obtained with a melting point of 109°C
1 H-NMR (300 MHz, DMSO-d6):δ=5.51 (s; 2H;--CH2); 7.28 (d; J=8.4 Hz; 2H; Ph-3H and Ph-5H) and 7.75 ppm (d; J=8.4 Hz; 2H; Ph-2H and Ph-6H)
MS (70 eV): m/e=395 (M+).
PAC Synthesis of 5-alkylamino-1-benzyl-3-bromo-4-nitropyrazoles of general formula (IV)I. Production of 3-bromo-1-(4'-methoxybenzyl)-5-methylamino-4-nitropyrazole
3.93 g (10.0 mmoles) of 3,5-dibromo-1-(4'-methoxybenzyl)-4-nitropyrazole are mixed with 100 ml of a 40-percent aqueous methylamine solution (1.28 moles) while stirring. The color of the reaction solution changes to yellow. The reaction mixture is stirred overnight at 60 degrees Celsius. The yellow-orange solution from which a yellow substance is already crystallized extracted three times with 200 ml acetic acid in each instance, dried over calcium chloride and the oily residue is filtered over silica gel with methylene chloride.
Yield: 2.54 g (75 percent of theory) of 3-bromo-1-(4'-methoxybenzyl)-5-methylamino-4-nitropyrazole in the form of yellow crystals with a melting point of 144 to 147 degrees Celsius.
1 H-NMR (60 MHz, DMSO-d6):δ=7.67 (q; 1H; J=6 Hz; --NH; exchangeable with D2 O), 7.00 (m; 4H; Ph-H), 5.33 (s; 2H;--CH2 PH-OCH3) 3.72 (s; 3H;--OCH3) and 3.05 ppm (d; 3H; J=6 Hz;--CH3) MS (70 eV): m/e=342 (M+).
II. Synthesis of 3-bromo-5-(2'-hydroxethylamino)-1-(4'-methoxybenzyl)-4-nitropyrazole
4.00 g (10.0 mmoles) of 3,5-dibromo-1-(4'-methoxybenzyl)-4-nitropyrazole are mixed in 30 ml ethanol with 0.61 g (10.0 mmoles) of ethanolamine and stirred overnight at 70 degrees Celsius. A thin-layer chromatograph shows that a conversion of approximately 50 % was effected. Another 0.60 g (10.0 mmoles) of ethanolamine are added and the mixture is stirred for 2 hours at 70 degrees Celsius. An individual reaction product is found in the thin-layer chromatograph (solvent: methylene chloride) in addition to a little educt. The reaction mixture is poured on water and a yellow substance is crystallized and collected by suction filtration.
Yield: 3.39 g (91 percent of theory) of 3-bromo-5-(2-hydroxyethylamino)- 1-(4-methoxybenzyl)-4-nitropyrazole with a melting point of 112 degrees Celsius.
1 H-NMR (60 MHz, DMSO-d6):δ=7.50 (s;wide; 1H; --NH; exchangable with D2 O), 7.05 (m; 4H; Ph-H), 5.34 (s; 2H; CH2 --PH--OCH3), 5.00 (s; 3H; wide; 1H;--OH; exchangeable with D2 O), 3.75 (s; 3H; --OCH3) and 3.45 ppm (m; 4H;--CH2 --CH2 --)
MS (70 eV): m/e=372 (M+)
III. Synthesis of 3-bromo-5-tert-butylamino-1-(4'-methoxybenzyl)-4'-nitropyrazole
0.50 g (1.28 mmoles) of 3,5-dibromo-1-(4'-methoxybenzyl)-4-nitropyrazole are heated in a solution of 10 g of tert-butylamine in 40 ml ethanol for 20 hours under reflux. After cooling, the reaction mixture is poured in 100 ml water and extracted three times with 50 ml acetic acid in each instance. After drying over magnesium sulfate, the mixture is rotated and the residue is filtered by adsorption on silica gel with dichloromethane.
Yield: 490 mg (99 percent of theory) of 3-bromo-5-tert-butylamino-1-(4'-methoxybenzyl)-4-nitropyrazole as pale yellow crystals with a melting point of 72 degrees Celsius.
1 H-NMR (60 MHz, DMSO-d6):δ=7.00 ppm (m; 4H; Ph-H), 5.32 (s; 1H; N--H; exchangeable with D2 O), 5.22 (s; 2H; 1N--CH2 --), 3.70 (s; 3H; OCH3), and 1.18 ppm (s; 9H;--C(CH3)3)
MS (70 eV): m/e=394 (M+)
IV. Synthesis of 5-benzylamino-3-bromo- 1-(4'-methoxybenzyl)-4-nitropyrazole
4.00 g (10.0 mmoles) of 3,5-dibromo-1-(4'-methoxybenzyl)-4-nitropyrazole are mixed in 30 ml ethanol with 11.0 g (100 mmoles) of benzylamine. This is heated at boiling temperature for 3.5 hours. The reaction mixture is poured on 100 ml water and extracted two times with 100 ml acetic acid in ethyl ester each instance. After drying with magnesium sulfate, the oily residue is filtered by adsorption on silica gel with a mixture of hexane and chloroform (1:2).
Yield: 4.13 g (99 percent of theory) of 5-benzylamino-3-bromo-1-(4'-methoxybenzyl)-4-nitropyrazole with a melting point of 125 to 127 degrees Celsius (hexane/chloroform 1:2)
1 H-NMR (60 MHz, DMSO-d6):δ=7.93 (t; 1H; J=6 Hz; --NH; exchangeable with D2 O), 7.40-6.80 (m; 9H; Ph-H), 5.15 (s; 2H; CH3 O-Ph-CH2), 4.58 (d; 2H; J=6 Hz; --NH--CH2 --; s after exchange with D2 O), and 3.73 ppm (s; 3 Hz; --OCH3)
MS (70 eV): m/e=418 (M+)
V. Synthesis of 5-benzylamino-3-bromo-1-(4'-methylbenzyl)-4-nitropyrazole
15 g (40 mmoles) of 3,5-dibromo-1-(4'-methylbenzyl)-4-nitropyrazole are mixed in 120 ml ethanol with 15 ml benzylamine. After heating for 1 hour, it is poured on ice, suctioned and recrystallized from ethanol.
Yield: 10.0 g (62 percent of theory) of 5-benzylamino-3-bromo-1-(4'-methylbenzyl)-4-nitropyrazole with a melting point of 108 degrees Celsius.
1 H-NMR (300 MHz,DMSO-d6):δ=2.29 (s; 3H;--CH3 ); 4.54 (d; J=6.4 Hz; 2H; NH--CH2 --; s after exchange with D2 O); 5.51 (s; 2H; 1-CH2); 7.15-7.35 (m; 9H; Ph-H) and 8.00 ppm (t; J=6.4 Hz; 1H; NH; exchanges with D2 O)
MS (70 eV): m/e=400 (M+)
VI. Synthesis of 5-benzylamino-3-bromo-1-(4'-chlorobenzyl)-4-nitropyrazole
9.88 g (25 mmoles) of 3,5-dibromo-1-(4'-chlorobenzyl)-4-nitropyrazole are heated for 1 hour in 50 ml ethanol with 15 ml benzylamine. The mixture is poured on ice, collected by suction and recrystallized from ethanol.
Yield: 8 g (76 percent of theory) of 5-benzylamino-3-bromo-1-(4'-chlorobenzyl)-4nitropyrazole with a melting point of 139 to 141 degrees Celsius.
1 H-NMR (300 MHz, DMSO-d6):δ=4.54 (d; J=5.4 Hz; 2H; 2H; NH--CH2 --; s after exchange with D2 O); 5.23 (s; 2H; 1--CH2 --); 7.10-7.38 (m; 9H; Ph-H) and 8.00 (t; 1H; --NH; exchanges with D2 O)
MS (70 eV): m/e=421 (M+)
VII. Synthesis of 5-benzylamino-3-bromo-1-(3'methoxybenzyl)-4-nitropyrazole
7.8 g (20 mmoles) of 3,5-dibromo-1-(3'-methoxybenzyl)-4-nitropyrazole are heated for 1 hour in 15 ml benzylamine at 80 degrees Celsius. The mixture is poured on ice, collected by suction and recrystallized from ethanol.
Yield: 5.8 g (70 percent of theory) of 5-benzylamino-3-bromo-1-(3'-methoxybenzyl)-4nitropyrazole with a melting point of 98 degrees Celsius.
1 H-NMR (300 MHz, DMSO-6):δ=4.54 (d; J=6.0 Hz; 2H; NH--CH2 --; s after exchange with D2 O); 5.19 (s; 2H; 1-CH2 --); 6.00-7.33 (m; 9H; Ph-H) and 8.02 (t; J=6.0 Hz; 1H, NH; exchanges with D2 O)
MS (70 eV): m/e=417 (M+)
PAC Synthesis of 1-benzyl-4,5-diaminopyrazoles of general formula (I)Hydrogenation of 5-alkylamino-1-benzyl-3-bromo-4-nitropyrazoles of general formula (IV).
General directions A:
1-Alkyl-5-aminoalkyl-3-bromo-4-nitropyrazole is mixed with 130 ml ethanol and 2 spatula tips of palladium/activated carbon catalyst (10 %) and transferred to an autoclave (250 ml) and stirred at 50 bar hydrogen atmosphere at room temperature (20 to 30 degrees Celsius) for the indicated period. At the conclusion of the reaction, the reaction mixture is transferred to a glass flask via a glass filter pump and is immediately filtered over glass frit. The filtrate is mixed with an equimolar amount of concentrated sulfuric acid (97%).
I. Synthesis of 4-amino-1-(4'-methoxybenzyl)-5-methylaminopyrazole
1.04 g (3.00) mmoles) of 3-bromo-1 -(4'-methoxybenzyl)-5-methylamino-4-nitropyrazole are hydrogenated for 2 hours according to General Directions A. 0.30 g (2.80 mmoles) of concentrated sulfuric acid (97%) are added. After reduction, 0.86 g (87 percent of theory) of 4-amino-1-(4'-methoxybenzyl)-5-methylaminopyrazole hydrosulfate are obtained in the form of an oil.
1 H-NMR (60 MHz, DMSO-d6);δ=9.60-7.73 (s; wide; 7H; --NH; --NH2 ; H2 SO4 ; exchangeable with D2 O); 7.51 (s; 1H; 3-H), 7.02 (m; 4H; Ph-H), 5.13 (s; 2H; --CH2 -Ph-OCH3), 3.70 (s; 3H; --OCH3), and 2.80 ppm (s; 3H; CH3 NH--)
MS (70 eV): m/e=232 (M+)
II. Synthesis of 4-amino-5-(2'-hydroxyethylamino)-1-(4'-methoxybenzyl)pyrazole
1.04 g (2.80 mmoles) of 3-bromo-5-(2'-hydroxyethylamino)-1-(4'-methoxybenzyl)-4-nitropyrazole are hydrogenated for 3 hours according to General Directions A. 0.81 g (80 percent of theory) of 4-amino-5-(2'-hydroxyethylamino)- 1-(4'-methoxybenzyl)pyrazole hydrosulfate are obtained in the form of an oil.
1 H-NMR (60 MHz, DMSO-d6):δ=8.66-3.83 (s; wide; 9H; --NH; --NH2 --OH, H2 SO4 exchangeable with D2 O); 7.37 (s; 1H; 3-H), 7.00 (m; 4H; Ph-H), 5.13 (s; 2H; --CH3 O-Ph-CH2--), 3.73 (s; 3H; --OCH3), and 3.67-3.32 ppm (m; 4H; --CH2 -CH2 --)
MS (79 eV): m/e=262 (M+)
III. Synthesis of 4,5-diamino:-1-(4'-methoxybenzyl)pyrazole
a) 1.00 g (2.40 mmoles) of 5-benzylamino-3-bromo-1-(4'-methoxybenzyl)-4-nitropyrazole are hydrogenated for 3 hours according to directions A.
Yield: 590 mg (78 percent of theory) of 4,5-diamino-1-(4'-methoxybenzyl)pyrazole hydrosulfate with a melting point of 186 to 187 degrees Celsius.
1 H-NMR (60 MHz, DMSO-d6):δ=9.10-5.51 (s; wide; 7H; 2 --NH2; H2 SO4 ; exchangeable with D2 O); 7.30 (s; 1H; 3-H), 7.05 (m; 4H; Ph-H), 5.12 (s; 2H; CH3 O-Ph-CH2 --) and 3.73 ppm (s; 3H; --OCH3)
MS (70 eV) :m/e=218 (M+)
b) 260 mg (0.68 mmoles) of 3-bromo-5-tert-butylamino-1-(4'-methoxybenzyl)-4-nitropyrazole are mixed in 100 ml absolute ethanol with 2 spatula tips of palladium-activated carbon catalyst and hydrogenated for 2 hours at 50 bar at room temperature.
Yield: 170 mg (79 percent of theory) of 4,5-diamino-1-(4'-methoxybenzyl)pyrazole hydrosulfate with a melting point of 186 to 187 degrees Celsius.
IV. Synthesis of 4,5-diamino-1-(3'-methoxybenzyl)pyrazole
1.64 g (4 mmoles) of 5-benzylamino-3-bromo-1-(3'-methoxybenzyl)-4-nitropyrazole are hydrogenated for 4 hours according to directions A. 1.0 g (82 percent of theory) of 4,5-diamino-1-(3'-methoxybenzyl)pyrazole hydrosulfate are obtained with a melting point of 185 degrees Celsius (with decomposition).
1 H-NMR (300 MHz, DMSO-d6):δ=7.43 (s; 1H; 3-H), 7.23 (dd; J=7.2 Hz and 8.1 Hz; 1H; Ph-3H); 6.84 (d; J=8.3 Hz; 1H; Ph-4H); 6.73 (s; 1H; Ph-1H); 6.71 (d; J=7Hz; 1H; Ph-2H); 6.5-5.5 (s; wide; 6H; NH2 ; H2 SO4 ; exchanges with D2 O); 5.18 (s; 2H; --CH2 --) and 3.70 ppm (s; 3H; --OCH3)
MS (70 eV) :m/e=218 (M+)
V. Synthesis of 4.5-diamino-1-(4'methylbenzyl)pyrazole
3.0 g (7.5 mmoles)of 5-benzylamino-3-bromo-1-(4'-methylbenzyl)-4-nitropyrazole are hydrogenated for 4 hours according to directions A. 1.90 g (84 percent of theory) of 4,5-diamino-1-(4'-methylbenzyl)pyrazole hydrosulfate are obtained with a melting point of 163 to 167 degrees Celsius (with decomposition).
1 H-NMR (300 MHz, DMSO-d6):δ=7.31 (s; 1H; 3-H), 7.2-7.05 (m;4H; Ph-H); 5.8-6.7 (s; 6H; NH2 ; H2 SO4 ; exchanges with D2 O); 5.12 (s; 2H; --CH2 --) and 2.26 ppm (s; 3H; --CH3)
MS (70 eV): m/e=202 (M+)
VI. Synthesis of 4,5-diamino-1-(4'-chlorobenzyl)pyrazole
3.15 g (7.5 mmoles) of 5-benzylamino-3-bromo-1-(4'-chlorobenzyl)-4-nitropyrazole are hydrogenated for 3 hours according to directions A. 2 g (82 percent of theory) of 4,5-diamino-1-(4'-chlorobenzyl)pyrazole hydrosulfate are obtained with a melting point of 188 degrees Celsius (with decomposition).
1 H-NMR (300 MHz, DMSO-d6):δ=7.13-7.39 (m; 5H; 3-H and Ph-H), 6.0-6.8 (s; wide; 6H; NH2 ; H2 SO4 ; exchanges with D2 O) and 5.12 ppm (s; 2H; --CH2 --)
MS (70 eV): m/e=222 (M+)
For all NMR spectra:
s=singlet, d=doublet, t=triplet, q=quartet, m=multiplet
PAC Example 4______________________________________ |
1.51 g 4,5-diamino-1-(4'-methoxybenzyl)pyrazole hydrosulfate |
0.65 g 5-amino-2-methylphenol |
0.15 g sodium sulfite |
5.00 g lauryl alcohol diglycol ether sulfate sodium salt |
(28-percent aqueous solution) |
1.00 g hydroxyethylcellulose, highly viscous |
10.00 g |
amnionia (22-percent aqueous solution) |
81.69 g |
water |
100.00 g |
______________________________________ |
50 g of the hair dye composition indicated above are mixed with 50 g hydrogen peroxide solution (6-percent) shortly before use and the mixture is then applied to blond natural hair and allowed to act at 40 degrees Celsius for 30 minutes. The hair is then rinsed with water and dried. The hair is dyed an intensive brilliant red-orange color.
PAC Hair dye solution______________________________________ |
1.60 g 4,5-diamino-1-(3'-methoxybenzyl)pyrazole hydrosulfate |
0.45 g 3-aminoplienol |
0.30 g 2-amino-4-(2'-hydroxyethyl)aminoanisole sulfate |
10.00 g |
lauryl alcohol diglycol ether sulfate sodium salt |
(28-percent aqueous solution) |
10.00 g |
ammonia (22-percent aqueous solution) |
77.65 g |
water |
100.00 g |
______________________________________ |
50 g of the hair dye composition indicated above are mixed with 50 g hydrogen peroxide solution (6-percent) shortly before use and the mixture is then applied to blond natural hair and allowed to act at 40 degrees Celsius for 30 minutes. The hair is then rinsed with water and dried. The hair is dyed a fashionable bordeaux shade.
PAC Hair dye solutionsHair dye solutions with the following composition are produced:
______________________________________ |
0.025 mole developer according to TABLE 1 |
0.025 mole coupler according to TABLE 1 |
10.00 g lauryl alcohol diglycol ether sulfate sodium salt |
(28-percent aqueous solution) |
10.00 g ammonia (22-percent aqueous solution) |
to 100.00 |
g water |
100.00 g |
______________________________________ |
The hair dye solutions are prepared according to Example 5 and applied to 90-percent gray human hair. The resulting colorings are shown in Table 1.
TABLE 1 |
______________________________________ |
developer |
of formula |
(I) from |
Exam- production |
ple example coupler color |
______________________________________ |
6 3/I 5-amino-2-methylphenol |
bright red |
7 3/II 5-amino-2-methylphenol |
red |
8 3/III 5-amino-2-methylphenol |
bright orange |
9 3/IV 5-amino-2-methylphenol |
bright orange |
10 3/V 3-aminophenol red |
11 3/Vl 3-aminophenol bright red |
12 3/I 2-amino-4-(2'-hydroxyethyl)- |
blue-violet |
aminoanisole sulfate |
13 3/II 2-amino-4-(2'-hydroxyethyl)- |
violet |
aminoanisole sulfate |
14 3/III 2-amino-4-(2'-hydroxyethyl)- |
dark violet |
aminoanisole sulfate |
15 3/IV 2-amino-4-(2'-hydroxyethyl)- |
dark violet |
aminoanisole sulfate |
16 3/V 4-(2'-hydroxyethyl)amino-1,2- |
dark red |
methylenedioxybenzene |
17 3/VI 4-(2'-hydroxyethyl)amino-1,2- |
dark red |
methylenedioxybenzene |
18 3/I α-naphthol brownish red |
19 3/II α-naphthol violet |
20 3/III α-naphthol bright violet |
21 3/IV α-naphthol bright violet |
22 3/V α-naphthol bright violet |
23 3/VI α-naphthol light violet |
______________________________________ |
Clausen, Thomas, Balzer, Wolfgang R., Neunhoeffer, Hans, Gerstung, Stefan
Patent | Priority | Assignee | Title |
10005259, | Dec 10 2004 | L OREAL S A | Packaging device for a hair dyeing product |
10016344, | Apr 24 2012 | L Oreal | Dyeing process using a mixture obtained from an aerosol device comprising a glycerolated surfactant, and device therefor |
10058494, | Nov 24 2015 | L Oreal | Compositions for altering the color of hair |
10071036, | Apr 24 2012 | L Oreal | Dyeing process using a mixture comprising a branched C6-C12 polyol, obtained from an aerosol device, and device therefor |
10111813, | Dec 27 2013 | L Oreal | Oxidation dyeing process using a substrate bearing at least one oxidation dye and an aqueous composition |
10111816, | Aug 05 2015 | L'Oreal | Composition for altering the color of keratin fibers |
10117811, | Dec 23 2013 | L Oreal | Packaging article comprising an envelope and an anhydrous dye composition comprising an oxidation dye, use of the same and process for dyeing keratin fibres |
10130568, | Jan 10 2011 | L'Oreal | Process for dyeing or lightening keratin fibres in two parts, using an oil-rich alkaline direct emulsion based on a solid nonionic surfactant with an HLB ranging from 1.5 to 10 |
10130575, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base, an amphoteric surfactant in a medium rich in fatty substances |
10130829, | Dec 23 2013 | L Oreal | Packaging article comprising an envelope and an anhydrous dye composition comprising a direct dye, use of the same and process for dyeing keratin fibres |
10137063, | Aug 02 2012 | L Oreal | Dye composition comprising nonionic guar gum or a nonionic derivative thereof, process and device for the same |
10172776, | Jul 30 2015 | L'Oreal | Compositions for altering the color of hair |
10179097, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base and an amphoteric or cationic polymer in a medium rich in fatty substances |
10182978, | Apr 24 2012 | L'Oreal | Dyeing process using a mixture comprising a thickening polymer, obtained from an aerosol device, and device therefor |
10195122, | Dec 19 2014 | L'Oreal | Compositions and methods for hair |
10195126, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base and a heterocyclic oxidation base |
10201483, | Aug 02 2012 | L Oreal | Dye composition in cream form comprising at least one oil and little or no solid fatty alcohol, dyeing process and suitable device |
10201484, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base, a polysaccharide thickener in a medium rich in fatty substances |
10226411, | Aug 02 2012 | L Oreal | Dyeing composition comprising a fatty substance, a non-ionic guar gum, an amphoteric surfactant and a non-ionic or anionic surfactant, and an oxidizing agent, dyeing process and suitable device |
10231915, | May 01 2015 | L Oreal | Compositions for altering the color of hair |
10240043, | Dec 19 2014 | L Oreal | Use for dyeing keratin fibres of a compound of azomethine type bearing two pyrazolopyridine units |
10245223, | Dec 19 2014 | L Oreal | Use for dyeing keratin fibres of a compound of azomethine type bearing a pyrazolopyridine unit |
10251830, | Dec 21 2011 | L Oreal | Oxidizing composition for treating keratin fibres, comprising a phosphoric acid mineral salt, and processes therefor |
10300007, | Dec 25 2012 | L Oreal | Composition comprising oxidation dye precursors and anionic polymers |
10314773, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base, a nonionic surfactant in a medium rich in fatty substances |
10441518, | Nov 24 2015 | L Oreal | Compositions for treating the hair |
10524992, | Dec 08 2014 | L Oreal | Hair dyeing process using at least one direct and/or natural dye, a titanium salt, a cellulose-based polysaccharide and optionally a particular organic solvent |
10524996, | Dec 08 2014 | L Oreal | Hair dyeing process using at least one dye, a titanium salt and an anionic thickening polymer |
10524998, | Dec 08 2014 | L Oreal | Hair dyeing process using at least one dye, an organic titanium salt, and a non-cellulosic-based polysaccharide |
10537510, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base and a particular coupler |
10537511, | Dec 08 2014 | L Oreal | Hair dyeing process using at least one dye, a titanium salt and an insoluble silicate |
10568821, | Dec 17 2014 | L'Oreal | Dye composition comprising a para-phenylenediamine oxidation base and a heterocyclic oxidation base |
10588831, | Dec 27 2013 | L Oreal | Lightening process using a substrate bearing at least one oxidizing agent and an aqueous composition |
10639254, | Dec 17 2014 | L Oreal | Dye composition comprising a para-phenylenediamine oxidation base and an additional base |
10709658, | Jun 28 2013 | L'Oreal | Compositions and methods for treating hair |
10716744, | Jun 12 2015 | L Oreal | Multi-step hair dyeing process using at least one titanium salt and a synthetic direct dye |
10731038, | Jun 23 2016 | L Oreal | (Dis)symmetric azomethine-type direct dye comprising at least one pyrazolopyridine unit, process for dyeing keratin fibers using this dye |
10765612, | Nov 28 2016 | L Oreal | Dye composition comprising 12-hydroxystearic acid, an organic amine and a dye |
10813853, | Dec 30 2014 | L'Oreal | Compositions and methods for hair |
10828244, | Nov 24 2015 | L Oreal | Compositions for treating the hair |
10863811, | Jun 23 2011 | L Oreal | Process for treating keratin fibres with input of heat |
10864156, | Jun 28 2013 | L Oreal | Compositions and methods for treating hair |
10874601, | Jun 28 2013 | L'Oreal | Compositions and methods for treating hair |
10898427, | Jun 28 2013 | L Oreal | Compositions and methods for treating hair |
10927259, | Dec 16 2016 | L Oreal | Dissymmetric azomethine direct dyes and process for their preparation, cosmetic composition comprising at least one such dye and use thereof |
10973752, | Jun 28 2013 | L'Oreal | Compositions for treating hair |
10993896, | May 01 2015 | L'Oreal | Compositions for altering the color of hair |
11013675, | Dec 17 2014 | L'Oreal | Dye composition comprising a para-phenylenediamine oxidation base and a particular coupler |
11083675, | Nov 24 2015 | L'Oreal | Compositions for altering the color of hair |
11090249, | Oct 31 2018 | L Oreal | Hair treatment compositions, methods, and kits for treating hair |
11117864, | Jun 23 2016 | L Oreal | Use for dyeing keratin fibers of a compound of azomethine type bearing a quinoline-derived unit |
11135150, | Nov 21 2016 | L'Oreal | Compositions and methods for improving the quality of chemically treated hair |
11160739, | Jun 29 2020 | L Oreal | Compositions and methods for altering the color of the hair |
11191706, | Nov 24 2015 | L'Oreal | Compositions for altering the color of hair |
11213470, | Nov 24 2015 | L Oreal | Compositions for treating the hair |
11213471, | Dec 21 2015 | L Oreal | Composition for dyeing the hair, comprising an oxidation base, a 2-amino-5-ethylphenol coupler and a fatty substance |
11246814, | Dec 18 2015 | L Oreal | Oxidizing composition for treating keratin materials, comprising a fatty substance and oxyalkylenated surfactants |
11266589, | Jun 20 2018 | L Oreal | Hair dyeing composition comprising an oxidation dye, a scleroglucan gum, and an alkylpolyglycoside |
11273115, | Jun 20 2018 | L Oreal | Hair dyeing method using a dye composition and an oxidizing composition, said compositions comprising a scleroglucan gum |
11278486, | Jun 20 2018 | L Oreal | Hair dyeing composition comprising an oxidation dye, a scleroglucan gum and an associative cellulose polymer |
11278487, | Jun 20 2018 | L Oreal | Hair dyeing composition comprising an oxidation dye, a scleroglucan gum and an alkaline agent such as an amino acid |
11291617, | Jun 20 2018 | L Oreal | Hair dyeing composition comprising an oxidation dye, a scleroglucan gum and a cationic polymer |
11324682, | Dec 21 2015 | L Oreal | Composition for dyeing the hair, comprising an oxidation base of para-phenylenediamine type and a 2-amino-5-ethylphenol coupler |
11406578, | Nov 25 2010 | L Oreal | Process for stripping keratin fibres using a composition comprising a sulfinic acid derivative and an acidic aqueous composition |
11413225, | Jun 20 2018 | L Oreal | Hair dyeing composition comprising an oxidation dye, a scleroglucan gum, an alcanolamine and a mineral alkaline agent |
11419809, | Jun 27 2019 | L Oreal | Hair treatment compositions and methods for treating hair |
11433011, | May 24 2017 | L'Oreal | Methods for treating chemically relaxed hair |
11504318, | Dec 16 2016 | L Oreal | Symmetric azomethine direct dyes, process for their preparation, cosmetic composition comprising at least one such dye and use thereof |
11555017, | May 25 2016 | L Oreal | Oxidation base derived from 1-hexyl-4,5-diaminopyrazole, composition containing same and use thereof in oxidation dyeing of keratin fibres |
11596588, | Dec 29 2017 | L Oreal | Compositions for altering the color of hair |
11701311, | Jun 20 2018 | L Oreal | Device for dispensing a hair dyeing product using a dye composition and an oxidizing composition comprising a scleroglucan gum |
11707420, | Aug 31 2021 | L Oreal | Compositions, kits, and methods for altering the color of hair |
11730688, | Dec 21 2015 | L Oreal | Composition for dyeing the hair, comprising a heterocyclic oxidation base and a 2-amino-5-ethylphenol coupler |
11826451, | Dec 31 2019 | L Oreal | Compositions for treating hair |
11839673, | Aug 28 2020 | L Oreal | Compositions, kits, and methods for altering the color of keratinous fibers |
11839678, | Nov 30 2021 | L Oreal | Compositions, methods, and kits for altering the color of hair |
11857660, | Dec 31 2019 | L Oreal | Compositions for imparting color and tone to the hair |
11896700, | Jun 23 2016 | L Oreal | Process for treating keratin fibers using an anhydrous composition comprising a compound of azomethine type comprising two pyrazolopyridine units and an aqueous composition |
11911636, | Dec 23 2013 | L'Oreal | Process for treating keratin fibers using a packaging article comprising an envelope and an anhydrous composition comprising an oxidizing agent |
11975092, | Oct 31 2018 | L'Oreal | Hair treatment compositions, methods, and kits for treating hair |
12109287, | Jul 31 2022 | L Oreal | Compositions and methods for altering the color of hair |
12109289, | Jun 30 2021 | L Oreal | Compositions for imparting color and tone to the hair |
12144878, | Dec 20 2019 | L Oreal | Multiple-compartment device comprising at least one internal frangible seal containing a keratin fibers dyeing composition |
12144879, | Jul 31 2022 | L Oreal | Compositions and methods for altering the color of hair |
12178898, | Dec 17 2020 | L ORÉAL | Composition comprising the combination of two particular oxidation dye precursors and a particular oxyethylenated fatty acid ester of sorbitan |
12178899, | Dec 17 2020 | L ORÉAL | Composition comprising the combination of two particular oxidation dye precursors and an alkyl(poly)glycoside |
5718731, | Jun 28 1994 | Wella GmbH | Oxidation hair dye composition based on 4,5-diaminopyrazole and m-phenylenediamine derivatives |
5752983, | Jan 20 1995 | L Oreal | Composition for oxidation dyeing of keratinous fibres comprising an oxidation base, a coupler, and 4-hydroxyindole as coupler and dyeing process with this composition |
5769902, | Jun 21 1995 | L Oreal | Compsitions for dyeing keratinous fibers comprising an ortho-diaminopyrazoles, a coupler or direct dye, and a manganese salt, and processes for dyeing keratinous fibers with these compositions |
5785717, | Feb 27 1995 | L Oreal | Composition for the oxidation dyeing of keratin fibers, comprising a diaminopyrazole derivative and a heterocyclic coupler, and dyeing process |
5873910, | Dec 23 1996 | L Oreal | Process for the two-stage oxidation dyeing of keratin fibers with a manganese complex or salt and a 4-substituted 1-naphthol, and dyeing kit |
5976195, | Sep 06 1996 | L Oreal | Oxidation dye composition for keratin fibers containing an oxidation dye precursor and amphiphilic polymer |
5989295, | Sep 06 1996 | L Oreal | Oxidation dye composition for keratin fibres, comprising an anionic amphiphilic polymer |
6010541, | Jul 23 1996 | L'Oreal | Oxidation dye composition for keratin fibers comprising a nonionic amphiphilic polymer |
6074439, | Sep 06 1996 | L'Oreal | Oxidation dye composition for keratin fibers containing an oxidation dye precursor and an anionic amphiphilic polymer |
6165230, | Feb 26 1997 | Henkel Kommanditgesellschaft auf Aktien | 1,4-diazacycloheptane derivatives and their use in hair oxidation dyes |
6277155, | Jul 23 1996 | L'Oreal | Oxidation dye composition for keratin fibers comprising a nonionic amphiphilic polymer |
6344063, | Jul 23 1996 | L'Oreal | Oxidation dye composition for keratin fibers comprising nonionic amphiphilic polymer |
6503282, | Jan 07 2000 | HFC PRESTIGE INTERNATIONAL OPERATIONS SWITZERLAND SARL; WELLA INTERNATIONAL OPERATIONS SWITZERLAND SARL | Means and method for dying keratinic fibers |
6527814, | Sep 06 1996 | L'Oreal S.A. | Oxidation dye composition for keratin fibers, comprising an anionic amphiphilic polymer |
6569211, | Nov 19 1991 | Henkel Kommanditgesellschaft auf Aktien | 5,6-dihydroxyindolines as additives for hair dyeing preparations |
6582477, | Apr 07 1999 | L OREAL S A | Oxidation dyeing process using a ketose as reducing agent and a laccase as oxidizing agent |
6599328, | Jun 21 1999 | L OREAL S A | Composition for the oxidation dyeing of keratin fibers and dyeing process using this composition |
6630003, | Oct 14 1998 | HENKEL AG & CO KGAA | Colouring agents with enzymes |
6648925, | Dec 23 1998 | Henkel Kommanditgesellschaft auf Aktien (Henkel KGaA) | Coloring agent comprising transition metals |
6673123, | Dec 20 1999 | HENKEL AG & CO KGAA | Solid colorant for keratin fibers |
6736862, | Jan 03 2002 | HENKEL AG & CO KGAA | Indole/indoline based hybrid dyes and indole/indoline based hybrid dye intermediate products |
6780203, | Sep 01 1997 | L'Oréal S.A. | Dyeing composition for keratin fibres |
6790240, | Dec 20 1999 | Henkel Kommanditgesellschaft aug Aktien | Solid colorant for keratin fibers |
6797012, | Dec 20 1999 | HENKEL AG & CO KGAA | Solid colorant for keratin fibers |
6814761, | Sep 17 1999 | Henkel Kommanditgesellschaft auf Aktien | Direct hair colorants |
6828443, | Jul 06 1999 | Henkel Kommanditgesellschaft auf Aktien | Dyes and colorants |
6835211, | Oct 12 1999 | Henkel Kommanditgesellschaft auf Aktien | Direct hair dyes and use thereof |
6846333, | Nov 08 2001 | L OREAL S A | Keratin fiber dyeing composition comprising a particular aminosilicone |
6858216, | May 06 2000 | Henkel Kommanditgesellschaft auf Aktien | Cosmetic agent containing 2-furanone derivatives |
6893470, | Jan 13 1998 | L OREAL S A | Keratinous fibre oxidation dyeing composition containing a laccase and dyeing method using same |
6905522, | Feb 12 2002 | L OREAL S A | Dye composition comprising an oxidation base of the diaminopyrazole type, a cationic oxidation base and a coupler |
6916343, | Aug 31 1999 | Henkel Kommanditgesellschaft auf Aktien | Method for coloring hair |
7001436, | Jun 11 2001 | L OREAL S A | Dyeing composition for keratinous fibres comprising a particular dicationic diazo dye |
7004979, | Sep 28 2001 | L OREAL S A | Dyeing composition comprising at least one diaminopyrazole oxidation base and at least one pyrazolo-azole coupling agent |
7060109, | Sep 14 2000 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA ; HENKEL KOMMANDLTGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Hair dyeing agents containing indigo derivatives |
7066965, | Nov 08 2000 | L OREAL S A | Bleaching composition for keratinous fibers comprising an associate polyurethane |
7070629, | Sep 28 2001 | L OREAL S A | Dye composition comprising at least one diaminopyrazole oxidation base, at least one paraphenylenediamine oxidation base comprising a cyclic amino group, and at least one coupler |
7077869, | Nov 08 2000 | L OREAL S A | Composition for bleaching or permanent waving of keratinous fibers comprising a cationic associative polyurethane |
7077873, | Sep 10 2002 | L OREAL S A | Composition for the dyeing of human keratinous fibres comprising a monocationic monoazo dye |
7081140, | Oct 26 2001 | HENKEL AG & CO KGAA | Developer components and their use for dyeing keratinic fibers |
7101405, | Nov 08 2000 | L OREAL S A | Oxidation dyeing composition for karatinous fibers comprising a cationic associative polyurethane |
7105032, | Sep 05 2002 | HENKEL AG & CO KGAA | Agents used for dyeing keratinous fibers |
7108726, | Nov 08 2000 | L OREAL S A | Direct dyeing composition for keratinous fibres comprising a cationic associative polyurethane |
7128902, | Nov 08 2001 | L OREAL S A | Reducing composition for treating keratin fibres, comprising a particular aminosilicone |
7132543, | Mar 28 2003 | L OREAL S A | Para-phenylenediamine derivatives containing a disubstituted pyrrolidinyl group bearing a cationic radical, and use of the same for dyeing keratin fibers |
7135046, | Jun 19 2003 | L OREAL S A | Dye composition comprising at least one oxidation base chosen from 4,5-diamino-1-(β-hydroxyethyl)-1H-pyrazole and 4,5-diamino-1-(β-methoxyethyl)-1H-pyrazole and the addition salts thereof and at least one coupler chosen from 6-hydroxyindole and the addition salts thereof |
7135047, | Dec 23 2002 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA | M-phenylenediamine derivatives as coupler components for the coloring of keratinic fibers |
7135167, | Nov 08 2001 | L OREAL S A | Oxidizing composition for treating keratin fibers, comprising a particular aminosilicone |
7138109, | Nov 08 2001 | L OREAL S A | Use of particular aminosilicones as a pre-or post-treatment of processes for bleaching keratin fibres |
7147672, | Oct 21 2002 | L OREAL S A | Oxidation dyeing composition for keratin fibers comprising a cationic poly(vinyllactam) and at least one C10-C14 fatty acid, methods and devices for oxidation dyeing |
7153331, | Dec 21 2001 | L OREAL S A | Dyeing composition for keratinous fibers comprising an oxyethylene rapeseed fatty acid amide |
7169194, | Dec 23 2002 | L OREAL S A | Dye composition comprising at least one particular tricationic direct dye, dyeing process, use and multi-compartment devices |
7179303, | Apr 27 2001 | Henkel Kommanditgesellschaft auf Aktien | Active ingredient combinations for hair-dyeing agents |
7186277, | Mar 24 2003 | L OREAL S A | Composition for dyeing keratin fibres, comprising a cationic para-phenylenediamine derivative substituted with a diazacyclohexane or diazacycloheptane ring |
7198648, | Jun 20 2000 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Coupling component for oxidative hair dyes |
7204856, | Dec 20 1999 | Henkel Kommanditgesellschaft auf Aktien (Henkel KGaA) | Shaped bodies for forming cosmetic preparations |
7208586, | Jun 23 2004 | L OREAL S A | Cationic diazo compounds, compositions comprising them as direct dye, process for dyeing keratin fibers and device therefor |
7211119, | Dec 23 2002 | HENKEL AG & CO KGAA | Coupling components |
7220408, | Nov 08 2001 | L OREAL S A | Cosmetic compositions containing a particular aminosilicone and a thickener, and uses thereof |
7223385, | Nov 08 2001 | L OREAL S A | Cosmetic compositions containing a particular aminosilicone and a conditioner, and uses thereof |
7244277, | Dec 17 2003 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTLEN HENKEL KGAA | Oxidation colorant in a tube |
7247173, | Dec 17 2003 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Tinting agent in tubes |
7247713, | Dec 15 2004 | L OREAL S A | Symmetrical diazo compounds containing 2-pyridinium groups and cationic or non-cationic linker, compositions comprising them, method of coloring, and device |
7250063, | Dec 06 2000 | L Oreal | Diaminopyrazole derivatives and their use for oxidation dyeing of keratinous fibres |
7255718, | Apr 01 1999 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Phosphate-type tensides combined with hair conditioning agents in hair coloring compositions |
7276087, | Apr 29 2003 | L OREAL S A | Dye composition comprising 2-chloro-6-methyl-3-aminophenol as coupler, para-aminophenol and 3-methyl-4-aminophenol as oxidation bases and at least one associative thickening polymer |
7282068, | May 28 2004 | L OREAL S A | Polycationic azo compounds for dyeing keratin fibers, dye composition containing the same, and methods for making such compounds |
7282069, | Jun 23 2004 | L OREAL S A | Cationic diazo compounds, compositions comprising them as direct dye, process for dyeing keratin fibers and device therefor |
7285138, | Jun 23 2004 | L OREAL S A | Cationic diazo compound, compositions comprising at least one cationic diazo compound as a direct dye, a process for dyeing keratin fibers and device therefore |
7288122, | Jun 23 2004 | L OREAL S A | Cationic diazo compounds, compositions comprising them as direct dye, process for dyeing keratin fibers and device therefor |
7288639, | Dec 15 2004 | L OREAL S A | Dyssymmetrical diazo compounds having at least one 4-pyridinium unit and a cationic or non-cationic linker, compositions comprising them, method of coloring, and device |
7294153, | Dec 17 2003 | HENKEL KOMMENDLTGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Caring oxidation coloring agent in a tube |
7300470, | Apr 29 2003 | L OREAL S A | Dye composition comprising 2-chloro-6-methyl-3-aminophenol, at least two oxidation bases chosen from para-phenylenediamine derivatives and at least one associative thickening polymer |
7300472, | Dec 19 2003 | HENKEL KOMMANDITGESELLSCHAFT AUF AKTIEN HENKEL KGAA | Agents for coloring fibers containing keratin |
7306630, | Apr 29 2003 | L OREAL S A | Composition comprising at least one coupler chosen from 2-chloro-6-methyl-3-aminophenol and addition salts thereof, at least one oxidation base, and at least one associative polymer comprising at least one C8-C30 fatty chain |
7311737, | Feb 27 2004 | L OREAL S A | Secondary para-phenylenediamine compounds comprising N-alkylfluorine, dye compositions comprising them and processes of dyeing therewith |
7323015, | Oct 21 2002 | L OREAL S A | Oxidation dyeing composition for keratin fibers comprising a cationic poly(vinyllactam) and at least One C10-C14 fatty alcohol, methods and devices for oxidation dyeing |
7326256, | Dec 06 2002 | L OREAL S A | Composition for the oxidation dyeing of keratin fibers, comprising at least one non-oxyalkenylated fatty alcohol, at least one oxidation dye, at least one associative polymer, and at least one amide of an alkanolamine and a C14-C30 fatty acid |
7326258, | Oct 07 2004 | L OREAL S A | Compositions comprising hydroxyalkyl direct dyes, implementation processes and uses thereof |
7326259, | Jun 23 2004 | L OREAL S A | Use of polycationic compounds in the dyeing of keratinous fibres |
7329287, | Dec 06 2002 | L OREAL S A | Oxidation dye composition for keratin fibers, comprising at least one oxidation dye, at least one associative polymer, at least one nonionic cellulose-based compound not comprising a C8-C30 fatty chain, and at least one cationic polymer with a charge density of greater than 1 meq/g and not comprising a C8-C30 fatty chain |
7329288, | Feb 27 2004 | L OREAL S A | N-heteroaryl secondary para-phenylenediamine, a dye composition comprising such a para-phenylenediamine, a process for preparing this composition and use thereof |
7329289, | Jun 01 2004 | L OREAL S A | Use of triarylmethane derivatives as direct dyes in a dye composition, composition and implementation process |
7338536, | Feb 27 2004 | L OREAL S A | N-alkylamino secondary para-phenylenediamine, composition for dyeing keratin fibers comprising such a para-phenylenediamine, processes using this composition and uses thereof |
7347879, | Feb 27 2004 | L OREAL S A | Sulfur-containing secondary para-phenylenediamines dye compositions comprising such para-phenylenediamines, processes, and uses thereof |
7351267, | Jan 27 2005 | L OREAL S A | Symmetrical diazo compounds comprising 2-imidazolium groups and a non-cationic linke, compositions comprising them, method of coloring, and device |
7354459, | Nov 03 2004 | L OREAL S A | Use of organosilane compounds for dyeing keratin fibers |
7364594, | Dec 04 2000 | L OREAL S A | Dyeing composition for keratinous fibres comprising an associative polymer and a polymer with acrylamide units, dialkyldiallylammonium halide, and vinylic carboxylic acid |
7374581, | Apr 29 2005 | L OREAL S A | Dye composition containing a particular cationic hydrazone direct dye, dyeing process, use and multi-compartment devices |
7374582, | May 02 2006 | L Oreal | Conditioning cream color base having improved color deposition properties |
7384432, | Feb 27 2004 | L OREAL S A | Secondary para-phenylenediamines having a carboxyl group, dye compositions comprising the same, and dyeing processes using the compositions |
7393367, | May 12 2005 | Henkel Kommanditgesellschaft auf Aktien | Agent for dyeing keratin-based fibers |
7396367, | Dec 29 2003 | 1192062 ALBERTA LTD | Double secondary para-phenylenediamine compounds, dye compositions comprising same, and dyeing process using the compositions |
7396368, | Dec 15 2004 | L OREAL S A | Symmetrical diazo compounds comprising 4-pyridinium groups and a cationic or non-cationic linker, compositions comprising them, method for coloring, and device |
7407517, | Aug 23 2005 | L OREAL S A | Cationic azo dyes with julolidine units, dyeing composition containing them, method of dyeing |
7410506, | Oct 14 2004 | L OREAL S A | Dicationic bis-hydrazone compound, dye composition comprising at least one such compound, implementation process therefor and uses thereof |
7413579, | Nov 21 2003 | HENKEL KOMMANDITGESELLSCHAFT AUF AKLLEN HENKEL KGAA | Method for dyeing fibers containing keratin |
7413580, | Jun 29 2005 | L OREAL S A | Double para-phenylenediamines joined by a linker arm substituted with one or more carboxylic radicals and/or derivatives and use in dyeing |
7422609, | Jun 29 2005 | L OREAL S A | Double para-phenylenediamines joined by an aromatic group for dyeing keratin fibers |
7429278, | Feb 27 2004 | Dolby Laboratories Licensing Corporation | N-alkyleheteroaryl secondary para-phenylenediamine and composition comprising such a para-phenylenediamine |
7431740, | Dec 04 2000 | L OREAL S A | Oxidation dyeing composition for keratinous fibers comprising an associative polymer and a pearling agent |
7435267, | Feb 27 2004 | L OREAL S A | Secondary para-phenylenediamines bearing an alkoxy group, dye composition comprising them, processes therefor and uses thereof |
7435268, | Feb 27 2004 | L OREAL S A | N-alkylhydroxylated secondary para-phenylenediamine compounds, composition for dyeing keratin fibers comprising the same, and dyeing processes using the composition |
7438728, | Dec 15 2004 | L OREAL S A | Dissymmetrical diazo compounds comprising 2-pyridinium group and a cationic or non-cationic linker, compositions comprising them, method for coloring, and device |
7442215, | Aug 11 2005 | L OREAL S A | Process for coloring keratin fibers comprising treating the scalp with at least one sorbitan ester |
7445645, | Feb 27 2004 | L OREAL S A | Ortho-and/or meta-substituted N-alkylhydroxylated secondary para-phenylenediamine compounds, compositions for dyeing keratin fibers comprising such compounds, and processes of dyeing therewith |
7473280, | Oct 08 2004 | HENKEL AG & CO KGAA | Coloring agent compositions and methods of treating keratin fibers therewith |
7481847, | Mar 28 2006 | L OREAL S A | Dye composition comprising at least one cationic hydrazone direct dye, dyeing process, and multi-compartment devices |
7485155, | Dec 23 2004 | L OREAL S A | Process for washing colored keratinous fibers with a composition comprising at least one nonionic surfactant and method for protecting the color |
7485156, | May 31 2005 | L OREAL S A | Composition for dyeing keratin fibers, comprising at least one diamino-N,N-dihydropyrazolone derivative, at least one coupler and at least one associative polyurethane polymer |
7485289, | Nov 08 2001 | L'Oreal, S.A. | Cosmetic compositions containing a particular aminosilicone and a conditioner, and uses thereof |
7488355, | May 31 2005 | L OREAL S A | Composition for dyeing keratin fibers, comprising a diamino-N,N-dihydropyrazolone compound, a coupler, and a polyol |
7488356, | May 31 2005 | L OREAL S A | Composition for dyeing keratin fibers, comprising at least one diamino-N,N-dihydropyrazolone derivative, at least one coupler, and at least one surfactant |
7497878, | Jun 30 2005 | L OREAL S A | Azo dyes containing a sulphonamide or amide function for the dyeing of human keratin fibers and method of dyeing and dyeing compositions containing them |
7504094, | Nov 08 2001 | L'Oreal, S.A. | Cosmetic compositions containing a particular aminosilicone and a thickener, and uses thereof |
7510705, | Nov 08 2001 | L'Oreal, S.A. | Process for permanently reshaping the hair using particular aminosilicones |
7553338, | Sep 16 2004 | Henkel KGaA | Color-modifying compositions containing a moringa plant seed protein and methods of treating keratin fibers therewith |
7559956, | May 22 2006 | L OREAL S A | Use of a cationic hydrotrope for the direct dyeing of keratinous fibres, composition comprising it and colouring processes employing it |
7559957, | Aug 10 2006 | L OREAL S A | Dyeing composition comprising at least one oxidation dye and at least one polymer comprising an acrylamide, dialkyldiallylammonium halide and vinylcarboxylic acid, with a high content of acrylamide |
7559958, | Aug 10 2006 | L OREAL S A | Dyeing composition comprising at least one oxidation dye and at least one amphoteric polymer comprising acrylamide, dialkyldiallylammonium halide and a high level of vinylcarboxylic acid |
7578855, | Nov 09 2005 | L OREAL S A | Composition for dyeing keratin fibers comprising at least one cationic 3-amino-pyrazolopyridine derivative, and methods of use thereof |
7578856, | Jun 01 2007 | L OREAL S A | Dyeing compositions comprising at least one aminopyrazolopyridine oxidation base, at least one coupler and at least one C4-C30 polyol and methods and use thereof |
7582121, | May 31 2005 | L OREAL S A | Composition for dyeing keratin fibers, comprising at least one diamino-N,N-dihydropyrazolone derivative, at least one coupler, and at least one heterocyclic direct dye |
7582123, | Jun 22 2007 | L OREAL S A | Coloring composition comprising at least one azomethine compound with a pyrazolinone unit |
7591860, | Feb 27 2004 | L OREAL S A | N-alkylpolyhydroxylated secondary para-phenylenediamines, dye compositions comprising them, processes, and uses thereof |
7608115, | May 09 2003 | L OREAL S A | Process for treating keratin fibres by applying heat |
7635394, | Nov 09 2005 | L OREAL S A | Composition for the dyeing of keratin fibers comprising at least one 3-amino-pyrazolopyridine derivatives |
7645303, | Apr 11 2002 | L OREAL S A | Composition for the oxidation dyeing of human keratinous fibres |
7645304, | Feb 28 2005 | L OREAL S A | Dyeing of in particular human keratin materials by dry thermal transfer of a direct azomethine dye, composition comprising the said dye and its method of preparation |
7648536, | May 09 2007 | L ORE AL S A | Method of coloring keratinous fibers comprising application of at least one aminopyrazolopyridine oxidation base in the absence of chemical oxidizing agents |
7651534, | Aug 25 2005 | L OREAL S A | Direct dye composition comprising at least one insoluble oxygenated compound, and processes using this composition |
7651535, | Feb 28 2005 | L OREAL S A | Dyeing of in particular human keratin materials by dry thermal transfer of a direct anthraquinone dye, composition comprising the said dye and its method of preparation |
7651536, | Jun 20 2006 | L OREAL S A | Composition for dyeing of keratin fibers, comprising 2,3-diamino-6,7-dihydro-1H,5H-pyrazolo[1,2-a]pyrazol-1-one, at least one oxidation base chosen from para-phenylenediamine and para-tolylenediamine, and a substituted meta-aminophenol |
7651537, | Jun 20 2006 | L OREAL S A | Composition for dyeing keratin fibers, comprising 2,3-diamino-6,7-dihydro-1H,5H-pyrazolo[1,2-a]pyrazol-1-one, 6-chloro-2-methyl-5-aminophenol and a substituted meta-aminophenol |
7651539, | Nov 30 2006 | L OREAL S A | Dye composition of acidic pH comprising 2,3-diamino-6,7-dihydro-1H,5H-pyrazolo[1,2-a]pyrazol-1-one, a coupler, a particular surfactant and an oxidizing agent and processes and kits using said composition |
7678156, | Sep 14 2004 | HENKEL AG & CO KGAA | Compositions for treating keratinic fibers, methods of treating such fibers therewith and compounds contained therein |
7678157, | May 22 2006 | L OREAL S A | Use of an anionic hydrotrope for the colouring of keratinous fibres, composition comprising it and colouring processes employing it |
7682402, | Apr 07 2005 | L OREAL S A | Aqueous composition comprising hydrogen peroxide and inert particles |
7722680, | Feb 28 2005 | L OREAL S A | Dyeing of human keratin materials by dry thermal transfer of a direct dye, composition comprising the said dye and its method of preparation |
7766977, | Nov 30 2006 | L OREAL S A | Dye composition of acidic pH comprising 2,3-diamino-6,7-dihydro-1H,5H-pyrazolo[1,2-a]pyrazol-1-one, a para-phenylenediamine, a meta-aminophenol and an oxidizing agent, and processes for dyeing keratin fibers using the composition |
7771491, | Dec 06 2002 | L'Oreal S.A. | Oxidation dye composition for keratin fibers, comprising at least one oxidation dye, at least one associative polymer, at least one nonionic cellulose-based compound not comprising a C8-C30 fatty chain, and at least one cationic polymer with a charge density of greater than 1 meq/g and not comprising a C8-C30 fatty chain |
7776104, | Aug 25 2005 | L OREAL S A | Oxidizing composition comprising insoluble compounds, and processes using this composition |
7811232, | Apr 21 2003 | Chameleon Development LLC | System for characterizing skin condition |
7857864, | Nov 09 2005 | L'Oreal S.A. | Composition for the dyeing of keratin fibers comprising at least one 3-amino-pyrazolopyridine derivative |
7871445, | Nov 09 2007 | L OREAL S A | Composition for the oxidation dyeing of keratin fibers comprising at least one nonionic derivative of cellulose with at least one hydrophobic substituent, at least one oxidation base of diaminodiazacyclopentene type, and at least one oxidation coupler, an oxidation dyeing process, and kit |
7875084, | Nov 09 2007 | L OREAL S A | Composition for the oxidation dyeing of keratin fibers comprising at least one nonionic derivative of cellulose with at least one hydrophobic substituent, at least one nonionic, nonhydrophobic polymer of the hydroxyalkylcellulose type, and at least one oxidation dye, and oxidation dyeing process |
7905925, | Aug 25 2005 | L OREAL S A | Dye composition comprising at least one insoluble compound and processes using this composition |
7918900, | Jun 20 2006 | L OREAL S A | Process for the predictable dyeing of keratinous fibers comprising applying at least one composition comprising at least one diamino-N, N-dihydropyrazolone derivative and at least one composition chosen from fundamental and/or golden-highlights compositions |
7972387, | Aug 11 2005 | L OREAL S A | Composition for dyeing keratin fibers comprising at least one oxidation base and a polyoxyethylenated sorbitan ester |
7972388, | Oct 30 2007 | L Oreal | Methods and kits for maintaining the condition of colored hair |
7998464, | Sep 29 2005 | L OREAL S A | Process for the photoprotective treatment of artificially dyed keratin fibers by application of a liquid water/steam mixture |
8002849, | Dec 19 2007 | L Oreal | Composition kit, and method for coloring the hair utilizing saccharide-siloxane copolymers |
8398961, | Dec 24 2005 | HENKEL AG & CO KGAA | Powdery styling agents and the dispenser systems thereof |
8444709, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a 2-aminophenol and derivatives thereof |
8444710, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a m-aminophenol and derivatives thereof |
8444711, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a benzene-1,3-diamine and derivatives thereof |
8444712, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a benzo[1,3]dioxol-5-ylamine and derivatives thereof |
8444713, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a naphthalen-1-ol and derivatives thereof |
8444714, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-Hexy1/Hepty1-4,5-diaminopyrazole and a benzene-1,3-diol and derivatives thereof |
8460397, | Feb 22 2011 | WELLA OPERATIONS US, LLC | Oxidative dyeing compositions comprising an 1-hexyl/heptyl-4,5-diaminopyrazole and a pyridine and derivatives thereof |
8623100, | Dec 17 2010 | L Oreal | 4-aminoindole derivatives and use thereof for the oxidation dyeing of keratin fibres |
8628586, | Dec 07 2010 | L Oreal | Composition comprising an oxidation dye precursor, a polycondensate of ethylene oxide and propylene oxide and a cationic polymer with a charge density of greater than or equal to 4 meq./g |
8628587, | Dec 07 2010 | L Oreal | Composition comprising an oxidation dye precursor, a polycondensate of ethylene oxide and propylene oxide, and a polyoxyalkylenated fatty acid |
8709101, | Dec 07 2010 | L Oreal | Oxidation dye composition comprising a polycondensate of ethylene oxide and of propylene oxide, and an oxyethylenated fatty acid amide |
8784505, | Feb 16 2012 | WELLA OPERATIONS US, LLC | 1-hexzl-1H-pyrazole-4,5-diamine hemisulfate, and its use in dyeing compositions |
8784506, | Nov 02 2010 | L Oreal | Dye composition having a low content of ammonia |
8785656, | Feb 16 2012 | WELLA OPERATIONS US, LLC | Telescoping synthesis of 5-amino-4-nitroso-1-alkyl-1H-pyrazole salt |
8790623, | Jan 18 2005 | L OREAL S A | Composition for treating keratin fibers, comprising at least one aromatic alcohol, at least one aromatic carboxylic acid, and at least one protecting agent |
8808399, | May 07 2010 | L'Oreal | Ready-to-use cosmetic composition for oxidation dyeing keratin fibers |
8808400, | Jan 10 2011 | L Oreal | Dyeing or lightening process using a composition rich in fatty substances comprising an alcohol having at least 20 carbons, compositions and device |
8808401, | Dec 20 2010 | L Oreal | Hair dyeing process using an insoluble silicate, an aromatic compound and a hydroxylated aliphatic solvent |
8814951, | Dec 07 2010 | L Oreal | Oxidation dye composition comprising a polycondensate of ethylene oxide and of propylene oxide, and an unsaturated fatty alcohol |
8828099, | Jan 10 2011 | L Oreal | Dyeing or lightening process using a composition rich in fatty substances comprising a solid alcohol and a solid ester, compositions and device |
8961620, | Jan 10 2011 | L Oreal | Process for dyeing or lightening keratin fibres in two parts, using an oil-rich alkaline direct emulsion based on a solid nonionic surfactant with an HLB ranging from 1.5 to 10 |
9028562, | Apr 29 2011 | L Oreal | Dye composition using a 2-hydroxynaphthalene, (acylamino)phenol or quinoline coupler in a fatty-substance-rich medium, dyeing process and device therefor |
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9060944, | Jul 05 2011 | L Oreal | Cosmetic composition rich in fatty substances comprising a polyoxyalkylenated fatty alcohol ether and a direct dye and/or an oxidation dye, the dyeing method and the device |
9060953, | Feb 16 2012 | WELLA OPERATIONS US, LLC | 1-hexyl-1H-pyrazole-4,5-diamine hemisulfate, and its use in dyeing compositions |
9066890, | Jul 05 2011 | L Oreal | Dye composition comprising an alkoxylated fatty alcohol ether and a fatty alcohol |
9078828, | Dec 16 2011 | L Oreal | Cationic tetrahydropyrazolopyridines, dye composition comprising such oxidation bases, implementation process therefor and use thereof |
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9226883, | Dec 13 2011 | L Oreal | Particular azomethine direct dyes, dye composition comprising at least one such compound, implementation process therefore and use thereof |
9233057, | Dec 13 2011 | L Oreal | Particular quinone direct dyes, dye composition comprising at least one such dye, implementation process therefor and use thereof |
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9370477, | Dec 17 2010 | L Oreal | Dyeing composition comprising a fatty substance, a pyrazolopyridine oxidation base and a coupler |
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9474700, | Nov 09 2012 | L Oreal | Methods for altering the color and appearance of hair |
9554977, | Dec 13 2011 | L Oreal | Triaromatic azomethine direct dyes, dye composition comprising at least one such dye, method of implementation and use |
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9789039, | Jun 21 2013 | L Oreal | Oxidation dyeing process implementing a pretreatment based on a composition rich in fatty substances and on metal catalysts |
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ER4162, | |||
ER9858, |
Patent | Priority | Assignee | Title |
5061289, | Dec 24 1988 | Wella Aktiengesellschaft | Oxidation hair dye composition containinng diaminopyrazol derivatives and new diaminopyrazol derivatives |
DE2160317, |
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